David M Shechter, Ph.D.
Affiliations: | 2009- | Biochemistry | Albert Einstein College of Medicine, New York, New York, United States |
Area:
Molecular Biology, BiochemistryWebsite:
www.shechterlab.orgGoogle:
"David Shechter"Mean distance: (not calculated yet)
Parents
Sign in to add mentorMichael E. O'Donnell | research assistant | 1995-1997 | ||
Jean Gautier | grad student | 1997-2004 | Columbia | |
(Studies on DNA replication: From regulation of initiation to helicase function.) | ||||
C. David Allis | post-doc | 2004-2009 | Rockefeller |
Children
Sign in to add traineeJoseph DeAngelo | grad student | 2020- | Albert Einstein |
Jacob Roth | grad student | 2021- | Albert Einstein |
Isaac Krasnopolsky | grad student | 2022- | Albert Einstein |
Takashi Onikubo | grad student | 2010-2015 | Albert Einstein |
Christopher Warren | grad student | 2012-2018 | Albert Einstein |
Benjamin Lorton | grad student | 2015-2021 | Albert Einstein |
Maxim Maron | grad student | 2017-2021 | Albert Einstein |
Humaira Ilyas | post-doc | 2021- | Albert Einstein |
Carola Wilczek | post-doc | 2010-2013 | Albert Einstein |
Wei-lin Wang | post-doc | 2011-2014 | Albert Einstein |
Subray Hegde | research scientist | 2020- | Albert Einstein |
Hongshan Chen | research scientist | 2014-2016 | Albert Einstein |
Emmanuel Burgos | research scientist | 2014-2021 | Albert Einstein |
BETA: Related publications
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Publications
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Lorton BM, Warren C, Ilyas H, et al. (2024) Glutamylation of Npm2 and Nap1 acidic disordered regions increases DNA mimicry and histone chaperone efficiency. Iscience. 27: 109458 |
Lorton BM, Warren C, Ilyas H, et al. (2023) Glutamylation of Npm2 and Nap1 acidic disordered regions increases DNA charge mimicry to enhance chaperone efficiency. Biorxiv : the Preprint Server For Biology |
Chi P, Lewis PW, Lu C, et al. (2023) Charles David Allis (1951-2023). Nature Genetics |
Maron MI, Casill AD, Gupta V, et al. (2022) Type I and II PRMTs inversely regulate post-transcriptional intron detention through Sm and CHTOP methylation. Elife. 11 |
Maron MI, Lehman SM, Gayatri S, et al. (2021) Independent transcriptomic and proteomic regulation by type I and II protein arginine methyltransferases. Iscience. 24: 102971 |
Warren C, Bonanno JB, Almo SC, et al. (2020) Structure of a single-chain H2A/H2B dimer. Acta Crystallographica. Section F, Structural Biology Communications. 76: 194-198 |
Lorton BM, Harijan RK, Burgos ES, et al. (2020) A binary arginine methylation switch on histone H3 Arginine 2 regulates its interaction with WDR5. Biochemistry |
Ravichandran M, Lei R, Tang Q, et al. (2019) Rinf Regulates Pluripotency Network Genes and Tet Enzymes in Embryonic Stem Cells. Cell Reports. 28: 1993-2003.e5 |
Shechter D. (2019) Introduction to the multi-author review on methylation in cellular physiology. Cellular and Molecular Life Sciences : Cmls |
Lorton BM, Shechter D. (2019) Cellular consequences of arginine methylation. Cellular and Molecular Life Sciences : Cmls |